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91.
通过室内模拟试验,研究湿度对西北地区黄绵土N2O排放的影响.结果表明:在试验温度下,随着土壤湿度增加,土壤N2O捧放量增加;但土壤孔隙含水量(WFPS)为20.67%时例外.此时黄绵土对空气中N2O有吸附现象,即在低含水量时,黄绵土有可能是N2O的汇.在试验设计的土壤湿度范围内,15℃条件下土壤N2O排放的最大水分效应区间在49.18%~57.86%(WFPS)之间,20℃条件下在38.14%~49.18%(WFPS)之间,25℃、30℃和35℃时累积量湿区在20.67%~38.14%(WFPS)之间,即随着温度的升高,N2O的最大水分效应区间提前.土壤N2O累积排放量(y)动力学曲线符合修正的Elovich方程(P<0.01),随着湿度的增加,表观排放速率(b)增大,25℃、300C和35℃时,N2O初始排放量(a)也随着湿度增加而增大;15℃、20℃和25℃时,土壤湿度(20.67%~57.86%WFPS)对农田土样N2O排放总量的作用表现为线性关系,30℃和35℃时表现为对数关系.  相似文献   
92.
Accumulation of copper (Cu) and cadmium (Cd) in six rice cultivars (94D-22, 94D-54, 94D-64, Gui630, YY-1 and KY1360) was evaluated through exposure to heavy metal contamination (100 mg/kg Cu, 1.0 mg/kg Cd, and 100 mg/kg Cu + 1.0 mg/kg Cd) in a greenhouse. The dry weight of shoot and root, concentrations of Cu and Cd in plant tissues and the Cu, Cd, P, Fe concentrations in the root surface iron plaques were analyzed eight weeks later after treatment. The results indicated that the plant biomass was mainly determined by rice genotypes, not Cu and Cd content in soil. Separated treatment with Cu/Cd increased each metal level in shoot, root and iron plaques. Soil Cu enhanced Cd accumulation in tissues. In contrast, Cu concentrations in shoot and root was unaffected by soil Cd. Compared to single metal contamination, combined treatment increased Cd content by 110.6%, 77.0% and 45.2% in shoot, and by 112.7%, 51.2% and 18.4% in root for Gui630, YY-1 and KY1360, respectively. The content level of Cu or Cd in root surface iron plaques was not affected by their soil content. Cu promoted Fe accumulation in iron plaques, while Cd has no effect on P and Fe accumulation in it. The translocation of Cu and Cd from iron plaques to root and shoot was also discussed. These results might be beneficial in selecting cultivars with low heavy metal accumulation and designing strategies for soil bioremediation.  相似文献   
93.
The effects of di erent phosphate-amendments on lead (Pb) uptake, the activities of superoxide dismutase (SOD) and the level of malondialdehyde (MDA) in cauliflower (Brassica oleracea L.) in contaminated soils with 2500, or 5000 mg P2O5/kg soil of hydroxyapatite (HA), phosphate rock (PR), single-superphosphate (SSP) and the mix of HA/SSP (HASSP) were evaluated in pot experiments. Results showed that the Pb concentrations in shoots and roots decreased by 18.3%–51.6% and 16.8%–57.3% among the treatments respectively compared to the control samples. The e ciency order of these phosphate-amendments in reducing Pb uptake was as follows: HASSPt HA > SSP t PR.With the addition of SSP, HA and the mix of HA/SSP, the SOD activity in shoot was reduced markedly (P < 0.05) compared with that in the control group. For example, the SOD activities in shoot by the treatments of HASSP, SSP, and HA in 5000 mg P2O5/kg were found to be only 51.3%, 56.2%, and 56.7%, respectively. Similar e ects were also observed on the level of MDA in the shoots with a decrease in 24.5%–56.3%. The results verified the inference that phosphate compounds could be used to reduce the plant uptake of Pb and resist the Pb stress in the plant vegetated in Pb-contaminated soils.  相似文献   
94.
Constructed wetlands have emerged as a viable option for helping to solve a wide range of water quality problems. However, heavy metals adsorbed by substrates would decrease the growth of plants, impair the functions of wetlands and eventually result in a failure of contaminant removal. Typha latifolia L., tolerant to heavy metals, has been widely used for phytoremediation of Pb/Zn mine tailings under waterlogged conditions. This study examined e ects of iron as ferrous sulfate (100 and 500 mg/kg) and lead as lead nitrate (0, 100, 500 and 1000 mg/kg) on phosphorus utilization and microbial community structure in a constructed wetland. Wetland plants (T. latifolia) were grown for 8 weeks in rhizobags filled with a paddy soil under waterlogged conditions. The results showed that both the amount of iron plaque on the roots and phosphorus adsorbed on the plaque decreased with the amount of lead addition. When the ratio of added iron to lead was 1:1, phosphorus utilized by plants was the maximum. Total amount of phospholipids fatty acids (PLFAs) was 23%–59% higher in the rhizosphere soil than in bulk soil. The relative abundance of Gram-negative bacteria, aerobic bacteria, and methane oxidizing bacteria was also higher in the rhizosphere soil than in bulk soil, but opposite was observed for other bacteria and fungi. Based on cluster analysis, microbial communities were mostly controlled by the addition of ferrous sulfate and lead nitrate in rhizosphere and bulk soil, respectively.  相似文献   
95.
The aim of this study was to characterize the biological stability and maturity degree of compost during a controlled pile-composting trial of mixed vegetable residues (VR) collected from markets of Tunis City with residues of Posidonia oceanica (PoR), collected from Tunis beaches. The accumulation in beaches (as well as their removal) constitutes a serious environmental problem in all Mediterranean countries particularly in Tunisia. Aerobic-thermophilic composting is the most reasonable way to profit highly-valuable content of organic matter in these wastes for agricultural purposes. The physical, chemical, and biological parameters were monitored during composting over 150 d. The most appropriate parameters were selected to establish the maturity degree. The main result of this research was the deduction of the following maturity criterion: (a) C/N ratio < 15; (b) NH4+-N < 400 mg/kg; (c) CO2-C < 2000 mg CO2-C/kg; (d) dehydrogenase activity < 1 mg TPF/g dry matter; (e) germination index (GI) > 80%. These five parameters, considered jointly are indicative of a high maturity degree and thus of a high-quality organic amendment which employed in a rational way, may improve soil fertility and soil quality. The mature compost was relatively rich in N (13.0 g/kg), P (4.74 g/kg) and MgO (15.80 g/kg). Thus composting definitively constitutes the most optimal option to exploit these wastes.  相似文献   
96.
丁草胺在土壤中吸附特性研究   总被引:3,自引:1,他引:2  
采用室内模拟试验方法,研究了丁草胺在三种不同有机质含量土壤中的吸附特性曲线,采用批量平衡法,用三种土壤对丁草胺进行吸附,并通过改变三种土壤的投加量、温度和pH进行实验。实验结果表明,丁草胺在三种不同土壤中的吸附平衡时间大约为12h,以快速吸附为主,土壤的有机质含量是影响土壤吸附性能的重要因素,土壤有机质含量与土壤对农药的吸附呈正相关,土壤的投加量越大固相中的吸附量也越大,丁草胺在土壤中的吸附随着温度的升高而减弱,但影响并不明显;碱性条件不利于土壤对丁草胺的吸附量。  相似文献   
97.
络合剂对铬污染土壤电动修复作用的影响   总被引:5,自引:0,他引:5  
用电动方法对铬污染砂土的修复进行了实验室研究。结果表明,EDTA和柠檬酸的加入明显改变了电动过程中电流的大小和铬在砂土中的分配,柠檬酸因与C(rⅥ)发生明显的竞争吸附或与土壤中的C(rⅢ)发生较强的络合作用而增加土壤总铬的迁移率,迁移到阳极附近的铬占砂土中铬含量的78.4%,电动处理以后土壤中剩余的六价铬浓度均显著减少,尤其是加入络合剂后的迁移率比不加入约提高40%,充分表明电动处理时加入络合剂可明显增加对砂土中六价铬的迁移。  相似文献   
98.
通过土壤柱实验,研究了土壤含水层处理工艺对污水处理厂二级处理出水的处理效果。初步讨论了土壤含水层处理工艺对各种污染物的去除机理,并评价了不同回用途径再生水对人体的健康风险。研究结果表明:土壤含水层处理工艺能够有效去除二级处理出水中的有机物和重金属离子,对大肠菌和粪大肠菌的去除率大于99.9%。健康风险评价结果显示:再生水的健康风险主要来自致癌物质,终生致癌风险在10-6数量级,而非致癌物质的健康危害风险在10-9数量级。  相似文献   
99.
污泥堆肥工艺是实现污泥减量化,无害化和资源化的重要手段。文章考察了污泥在堆肥前后四类重金属(铜、锌、铅和镉)形态的变化。结果显示,铜、锌、铅和镉在堆肥前后的总量变化不大,Cu、Zn主要以有机结合态和残渣态形式存在,而Pb、Cd主要以残渣态形式存在。堆肥处理过程中可交换态重金属都呈下降趋势,但各种重金属的可交换态变化幅度不同,以Zn和Cd下降幅度最大,Zn的可交换态由堆肥前的10.5%下降到堆肥后的4.8%;Cd的可交换态从堆肥前的3.2%下降到堆肥后的1.8%,下降比例超过和接近50%。随着向土壤中添加污泥及堆肥量的增加,小麦植株地上和地下部分重金属含量也相应增加,且地下部分含量高于地上部分,小麦中重金属含量在地下部与地上部之间的比值恒定,特别是Pd,Cd的地上和地下部分浓度比可分别达到130和15~20,经堆肥处理的污泥可以降低小麦对其中重金属的吸收。将污泥及堆肥腐熟品添加至石油污染土壤中,与对照相比土壤中的石油烃含量有一定幅度的下降,最大下降幅度为19.6%。处理一个月后重金属含量及其形态变化不大,Zn具有向铁锰氧化态转化的趋势。  相似文献   
100.
植被恢复对矸石山生态环境效应影响研究   总被引:1,自引:0,他引:1  
以兴隆庄煤矿绿化矸石山和裸露矸石山为研究对象,研究了植被恢复对矸石山生态环境效应的影响.结果表明,植被的恢复重建了矸石山生态系统,改善了矸石山生态环境:气温平均降低3.7℃、空气相对湿度提高了7.1%,矸石山近地层SO2、NOx和TSP粉尘日均浓度分别降低了0.1471 mg/m3,0.0004 mg/m3 0.0389 Mg/m3矸石山植被的恢复增加了矸石山土壤比重,降低了土壤容重、提高了土壤有机质含量.  相似文献   
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